BACKGROUND OF THE INVENTION
Field of the Invention
[0001] The present invention relates to a fusing device that fuses an image transferred
to a print medium and an image forming apparatus employing the same, and more particularly,
to a fusing device of an endless belt type and an image forming apparatus employing
the same.
Description of the Related Art
[0002] In general, an electrophotographic image forming apparatus prints an image by scanning
light to a photosensitive medium that is charged with a predetermined electric potential
in order to form an electrostatic latent image, developing the image with a toner
of a color, and transferring and fusing the image onto a print medium. A fusing device
is provided on a printing passage of the image forming apparatus and fuses the toner
image transferred to the print medium.
[0003] The fusing device is classified into a roller type and a belt type. In the roller
type, a toner image is fused by a heating roller and a pressure roller. In the belt
type, a contact surface between the print medium and an endless belt is wide as compared
to a nip in a fusing device of the roller type. Accordingly, the fusing device of
the belt type does not require an external diameter of the heating roller to be enlarged
in order to increase the contact surface. Thus, a configuration of the fusing device
becomes compact. Also, as the contact surface is relatively wide in the fusing device
of the belt type as compared with that of the roller type, a fusing performance is
relatively better. Also, a warm-up time is reduced and an image can be fused during
high-speed printing.
[0004] FIG. 1 is a schematic cross-sectional view of a conventional fusing device of an
endless belt type. Referring to FIG. 1, a conventional fusing device includes a heating
roller 11, a pressure roller 21, a separation roller 31 that faces the heating roller
11, and a fusing pressure belt 15 that winds around the pressure roller 21 and the
separation roller 31.
[0005] The pressure roller 21 and the separation roller 31 support the fusing pressure belt
15 such that the fusing pressure belt 15 rotates. Furthermore, the pressure roller
21 and the separation roller 31 allow a portion of the fusing pressure belt 15 to
be in contact with the heating roller 11 or a print medium M being fed. The pressure
roller 21 is elastically pressured along a line L1 going through the center O1 of
the heating roller 11 and the center A1 of the pressure roller 21. Accordingly, the
pressure roller 21 is elastically pressured in a perpendicular direction to a surface
of the heating roller 11.
[0006] The separation roller 31 is elastically pressured along a line L2 going through the
center O1 of the heating roller 11 and the center B1 of the separation roller 31.
Accordingly, the separation roller 31 is elastically pressured in a perpendicular
direction to a surface of the heating roller 11.
[0007] The lines L1 and L2 meet at the center O1 of the heating roller 11 as an apex and
make a predetermined angle (i.e., the sum of θ1 and θ2). Thus, a distance between
the center A1 of the pressure roller 21 and the center B1 of the separation roller
31 varies according to an amount of elastic pressure applied to the rollers 21 and
31. Given two optional lines P1 and P2 that go through the center A1 of the pressure
roller 21 and the center B1 of the separation roller 31 and are parallel with each
other, the line L1 inclines at θ1 to the line P1 and the line L2 inclines at θ2 to
the line P2.
[0008] Here, a variation of the distance between the pressure roller 21 and the separation
roller 31 is influenced by a condition of the print medium M that passes between the
heating roller 11 and the fusing pressure belt 15. That is, if a relatively thick
printing medium M or a plurality of sheets of print media M pass therebetween, the
pressure roller 21 and the separation roller 31 move in a direction such that they
become farther away from the heating roller 11. Accordingly, the distance between
the pressure roller 21 and the separation roller 31 increases. As a result, a pressure
applied to the fusing pressure belt 15 increases. Thus, the fusing pressure belt 15
may become deformed or slip, thereby causing an image distortion, an image offset,
a print medium jam, etc.
SUMMARY OF THE INVENTION
[0009] The present invention provides a fusing device that can prevent inferior fusing and
a print medium jam by providing a same direction of force by elastic members to elastically
press a pressure roller and a separation roller and an image forming apparatus employing
the same.
[0010] According to the present invention there is provided an apparatus and method as set
forth in the appended claims. Other features of the invention will be apparent from
the dependent claims, and the description which follows.
[0011] According to an aspect of the present invention, there is provided a fusing device
that is provided on a printing passage of an image forming apparatus and fuses an
image transferred to a print medium, the fusing device including: a heating roller;
a pressure roller facing the heating roller to press a print medium fed along the
printing passage against the heating roller; a separation roller facing the heating
roller to separate the print medium from the heating roller after the image is fused
on to the print medium; a fusing pressure belt that winds around the pressure roller
and the separation roller and forms a fusing nip to contact with the heating roller;
a first pressure member to pressure the pressure roller towards the heating roller
along a first line; and a second pressure member to pressure the separation roller
towards the heating roller, wherein the first line passes through a center of the
pressure roller and forms an angle θ1 towards the separation roller with a second
line that passes through a center of the heating roller and the center of the pressure
roller.
[0012] Preferably, the angle θ1 formed by the first line and the second line satisfies an
equation 1:

[0013] Preferably, the second pressure member pressures the separation roller towards the
heating roller along a third line, and the third line passes through a center of the
separation roller and forms an angle θ2 towards the pressure roller with a fourth
line that passes through the center of the heating roller and the center of the separation
roller.
[0014] Preferably, the angle θ2 formed by the third line and the fourth line satisfies an
equation 2:

[0015] Preferably, the first line and the third line are substantially parallel with each
other.
[0016] Preferably, the fusing device further includes: a first bushing that supports the
pressure roller to be rotatable; a second bushing that supports the separation roller
to be rotatable; and a frame such that the first pressure member is provided between
the first bushing and the frame and the second pressure member is provided between
the second bushing and the frame.
[0017] Preferably, the first pressure member elastically pressures the pressure roller towards
the heating roller.
[0018] Preferably, the second pressure member elastically pressures the separation roller
towards the heating roller.
[0019] According to another aspect of the present invention, there is provided a fusing
device that is provided on a printing passage of an image forming apparatus and fuses
an image transferred to a print medium, the fusing device including: a heating roller;
a pressure roller facing the heating roller to press a print medium fed along the
printing passage against the heating roller; a separation roller facing the heating
roller to separate the print medium from the heating roller after the image is fused
on to the print medium; a fusing pressure belt that winds around the pressure roller
and the separation roller and forms a fusing nip to contact with the heating roller;
a first pressure member to pressure the pressure roller towards the heating roller;
and a second pressure member to pressure the separation roller towards the heating
roller along a first line, wherein the first line passes through a center of the separation
roller and forms an angle θ1 towards the pressure roller with a second line that passes
through a center of the heating roller and the center of the separation roller.
[0020] Preferably, the angle θ1 formed by the first line and the second line satisfies an
equation 1:

[0021] Preferably, the fusing device further includes: a first bushing that supports the
pressure roller to be rotatable; a second bushing that supports the separation roller
to be rotatable; and a frame such that the first pressure member is provided between
the first bushing and the frame, and the second pressure member is provided between
the second bushing and the frame.
[0022] Preferably, the first pressure member elastically pressures the pressure roller towards
the heating roller and the second pressure member elastically pressures the separation
roller towards the heating roller.
[0023] According to another aspect of the present invention, there is provided an image
forming apparatus including: a developing unit to develop an image with a toner and
form the image; a light scanning unit to scan a beam to the developing unit to form
an electrostatic latent image on the developing unit; a transfer unit corresponding
to the developing unit to transfer the latent image formed on the developing unit
to a print medium; and the fusing device described above that is provided on a printing
passage and fuses the image transferred to the print medium.
[0024] According to another aspect of the present invention, there is provided a pressing
device that is provided in an image forming apparatus, the pressing device including:
a common roller; a first roller facing the common roller; a second roller facing the
common roller; a pressure belt that winds around the first roller and the second roller
and forms a nip to contact with the common roller so as to fix an image on a medium
passing between the pressure belt and the common roller; a first pressure member to
pressure the first roller towards the common roller along a first line; and a second
pressure member to pressure the second roller towards the common roller along a second
line, the first line being substantially parallel with the second line.
[0025] According to another aspect of the present invention, there is provided a fusing
device that is provided on a printing passage of an image forming apparatus and fuses
an image transferred to a print medium, the fusing device including: a heating roller;
a pressure roller facing the heating roller to press a print medium fed along the
printing passage against the heating roller; a separation roller facing the heating
roller to separate the print medium from the heating roller after the image is fused
on to the print medium; a fusing pressure belt that winds around the pressure roller
and the separation roller and forms a fusing nip to contact with the heating roller;
a first pressure member to pressure the pressure roller towards the heating roller
along a first line; and a second pressure member to pressure the separation roller
towards the heating roller along a second line, the second line being substantially
parallel with the first line.
[0026] According to another aspect of the present invention, there is provided a method
of fusing an image transferred to a print medium in an image forming apparatus, the
method including: forming a fusing nip to contact a heating roller with a fusing pressure
belt that winds around a pressure roller and a separation roller; pressuring the pressure
roller along a first line towards the heating roller in order to press the print medium
against the heating roller; and pressuring the separation roller along a second line
towards the heating roller in order to separate the print medium from the heating
roller, wherein the first line and the second line are roughly parallel with each
other.
[0027] Additional aspects and/or advantages of the invention will be set forth in part in
the description which follows and, in part, will be obvious from the description,
or may be learned by practice of the invention.
BRIEF DESCRIPTION OF THE DRAWINGS
[0028] These and/or other aspects and advantages of the invention will become apparent and
more readily appreciated from the following description of the embodiments, taken
in conjunction with the accompanying drawings of which:
FIG. 1 is a schematic cross-sectional view of a conventional fusing device;
FIG. 2 is a schematic cross-sectional view of a fusing device according to an embodiment
of the present invention;
FIG. 3 illustrates an operation of the fusing device according to an embodiment of
the present invention; and
FIG. 4 is a schematic cross-sectional view of an image forming apparatus employing
the fusing device according to an embodiment of the present invention.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0029] Reference will now be made in detail to the present embodiments of the present invention,
examples of which are illustrated in the accompanying drawings, wherein like reference
numerals refer to the like elements throughout. The embodiments are described below
in order to explain the present invention by referring to the figures.
[0030] FIG. 2 is a schematic cross-sectional view of a fusing device according to an embodiment
of the present invention. FIG. 3 illustrates an operation of the fusing device according
to an embodiment of the present invention. Referring to FIGs. 2 and 3, the fusing
device according to an embodiment of the present invention is provided to fuse an
unfused toner image T formed on a print medium M. The fusing device includes a heating
roller 41 that is heated by a heat source provided therein. A pressure roller 51 and
a separation roller 61 both face the heating roller 41. A fusing pressure belt 45
winds around the pressure roller 51 and the separation roller 61. A first elastic
member 55 elastically pressures the pressure roller 51 toward the heating roller.
A second elastic member 65 elastically pressures the separation roller 61 toward the
heating roller 41.
[0031] The pressure roller 51 and the separation roller 61 support the fusing pressure belt
45 such that the fusing pressure belt 45 is rotatable around the pressure roller 51
and the separation roller 61. Furthermore, the pressure roller 51 and the separation
roller 61 allow a portion of the fusing pressure belt 45 to be in contact with the
heating roller 41 or a print medium M being fed. Here, a toner image T transferred
on the print medium M is fused on the print medium M by heating and pressing through
the fusing device. The pressure roller 51 presses the print medium M that is provided
(or fed through), along with the heating roller 41. The separation roller 61 separates
the print medium M that is completely settled from the fusing device.
[0032] The fusing pressure belt 45 rotatably winds around the pressure roller 51 and the
separation roller 61 and forms a fusing nip in contact with the heating roller 41.
[0033] The first elastic member 55 supports the pressure roller 51 to be elastically pressured
along a first line P3 and/or the second elastic member 65 supports the separation
roller 61 to be elastically pressured along a third line P4. It is understood that
according to other aspects, methods other than elastic pressure and devices other
than an elastic member may be used to pressure the pressure roller 51 and the separation
roller 61. Here, the first line P3 is a line that goes through the center A2 of the
pressure roller 51 and makes a predetermined angle θ3 with a second line L3 towards
the separation roller 61 (i.e., the first line P3 is closer to the separation roller
61 than the second line L3). The second line L3 is a line that goes through the center
O2 of the heating roller 41 and the center A2 of the pressure roller 51. For example,
the angle of θ3 formed by the first line P3 and the second lines L3 may, although
not necessarily, satisfy a range according to the following equation 1:

[0034] To this end, the first elastic member 55 is interposed between a first bushing 53
that supports the pressure roller 51 to be rotatable and a frame 70 in order to elastically
pressure the pressure roller 51 along the first line P3.
[0035] The parameters of the non-limiting example equation 1 are provided to prevent the
fusing pressure belt 45 from slipping due to tension of the fusing pressure belt 45
that is maintained insufficiently. It is understood that according to other aspects,
parameters other than 7° and 13° may be used. If the angle θ3 is less than the minimum
value in the equation 1, a variation of a distance between the center A2 of the pressure
roller 51 and the center B2 of the separation roller 61 becomes large when the fusing
device fuses a print medium M of about 1 mm or more thick. Thus, the tension of the
fusing pressure belt 45 increases and the fusing pressure belt 45 may become deformed
or slip, thereby causing an image distortion, an image offset, a print medium M jam,
etc. If the angle θ3 is greater than the maximum value in the equation 1, the center
A2 of the pressure roller 51 inclines to the center B2 of the separation roller 61
too much. Thus, the tension of the fusing pressure belt 45 decreases and the belt
45 may slip.
[0036] The third line P4 is a line that goes through the center B2 of the separation roller
61 and makes a predetermined angle θ4 with the fourth line L4 towards the pressure
roller 51 (i.e., the third line P4 is closer to the pressure roller 51 than the fourth
line L4). The fourth line L4 is a line that goes through the center O2 of the heating
roller 41 and the center B2 of the separation roller 61. For example, the angle of
θ4 formed by the third line P4 and the fourth line L4 may, although not necessarily,
satisfy a range according to the following equation 2:

[0037] To this end, the second elastic member 65 is interposed between a second bushing
63 that supports the separation roller 61 to be rotatable and the frame 70 in order
to elastically pressure the separation roller 61 along the third line P4.
[0038] The parameters of the non-limiting example equations 1 and 2 are provided to prevent
the belt 45 from slipping due to tension of the fusing pressure belt 45 that is maintained
insufficiently. It is understood that according to other aspects, parameters other
than 7° and 13° may be used. If the angles θ3 and θ4 are less than the minimum values
in the equations 1 and 2, a variation of the distance between the center A2 of the
pressure roller 51 and the center B2 of the separation roller 61 becomes large when
the fusing device fuses a print medium M of about 1 mm or more thick. Thus, the tension
of the fusing pressure belt 45 increases and the fusing pressure belt 45 may become
deformed or slip, thereby causing an image distortion, an image offset, a print medium
M jam, etc. Also, if the angle θ3 and θ4 are greater than the maximum values in the
equations 1 and 2, the distance between the center A2 of the pressure roller 51 decreases
when the fusing device fuses the print medium M of about 1 mm or more thick. Thus,
the tension of the fusing pressure belt 45 decreases and the belt 45 may slip.
[0039] According to an aspect of the present invention, the first and the third lines P3
and P4 are parallel to each other. Specifically, the first and the third lines P3
and P4 satisfying, for example, the conditions of the equations 1 and 2 are parallel
to each other. In this case, if the pressure roller 51 and the separation roller 61
move farther away from the heating roller 41 as, for example, the thickness of the
print medium M changes or a plurality of sheets of print media M pass through, the
distance between the center A2 of the pressure roller 51 and the center B2 of the
separation roller 61 does not change. Thus, the fusing pressure belt 45 may not slip
or be deformed. While shown as parallel, it is understood that lines P3 and P4 need
not be exactly parallel in all aspects, and that the lines P3 and P4 can be non-parallel
in other aspects.
[0040] As described above, the pressure roller 51 and the separation roller 61 are designed
to be elastically pressured in a direction of the first line P3 and in a direction
of the third line P4, respectively. As a result, the pressure roller 51 and the separation
roller 61 are elastically pressured as the print medium M being fed between the heating
roller 41 and the fusing pressure belt 45 changes in thickness (as illustrated in
FIG. 3). The variation of the distance between the center A2 of the pressure roller
51 and the center B2 of the separation roller 61 does not significantly change as
compared to that in the conventional fusing device of FIG. 1. That is, the variation
of the distance is hardly influenced by a thickness variation of the print medium
M, and thus a pressure applied to the fusing pressure belt 45 does not significantly
change. Accordingly, the fusing pressure belt 45 may be prevented from slipping or
being deformed, thereby preventing an image distortion, an image offset, a printing
medium jam, etc.
[0041] FIG. 4 is a schematic cross-sectional view of an image forming apparatus according
to an embodiment of the present invention. Referring to FIG. 4, the image forming
apparatus is provided as a tandem type color image forming apparatus and includes
a cabinet 110, a developing unit 130 mounted in the cabinet 110, a light scanning
unit 140, a transfer unit 150, and a fusing device 160. However, it is understood
that according to other aspects, the image forming apparatus need not be a tandem
type image forming apparatus and can be a non-color apparatus. Moreover, the apparatus
can be a multifunction device in other aspects including functions of copying, faxing,
and/or scanning.
[0042] The cabinet 110 forms an external shape of the image forming apparatus and includes
a supplying unit 120 that contains print media M and is detachable therefrom. A print
medium M in the supplying unit 120 is picked up by a pickup roller 125 and transferred
through a transferring passage between the developing unit 130 and the transfer unit
150.
[0043] The developing unit 130 includes a photosensitive medium 135 on which an electrostatic
latent image formed responding to a beam from the light scanning unit 140. The developing
unit 130 develops the image on the photosensitive medium 135 with a toner provided
in the developing unit 130 to form a toner image on the photosensitive medium 135.
[0044] According to an aspect of the present invention, the developing unit 130 is a single
pass type. A plurality of developing units 130 may be provided such that each of the
developing units 130 corresponds to a color in order to form a full color image. As
shown in FIG. 4, for example, the developing unit 130 includes four units to display
yellow, magenta, cyan, and black. However, it is understood that other colors and
numbers of colors can be used in other aspects, and that only a single unit 130 need
be used in a mono-color embodiment.
[0045] The light scanning unit 140 scans a beam to form an electrostatic latent image on
each of a plurality of photosensitive media 135. To this end, the light scanning unit
140 has a multi-beam light scanning structure to scan a beam to the plurality of photosensitive
media 135 at the same time. The light scanning unit 140 includes a beam deflector
(not labeled) to deflectively scan a beam irradiated from a light source (not shown).
The light scanning unit further includes an f-θ lens (not labeled) to scan an image
light deflected by the beam deflector on a surface to be scanned. Here, the light
source may include a semiconductor element with a plurality of luminous points or
a single luminous point corresponding to each color, but is not restricted thereto.
[0046] The transfer unit 150 is provided to face the photosensitive medium 135 with the
print medium M being transferred through the transferring passage interposed therebetween
such that the transfer unit 150 transfers a toner image formed on the photosensitive
media 135 to the print medium M. Thus, the transfer unit 150 includes a transfer belt
151 that faces the photosensitive media 135 and a transfer backup roller 155. An image
transferred by the transfer unit 150 to the print medium M is fused by the fusing
device 160.
[0047] The fusing device 160 includes the heating roller 41, the pressure roller 51, the
separation roller 61, the fusing pressure belt 45, and the elastic member 55, 65.
The fusing device 160 fuses an unfused toner image transferred to the print medium
M by pressing the heating roller 41 and the fusing pressure belt 45, which is also
pressured by the pressure roller 51. A configuration and an operation of the fusing
device 160 is substantially the same as that described with reference to FIGs. 2 and
3, and thus descriptions thereof will not be repeated.
[0048] It is understood that aspects of the present invention may be applied to other components
of an image forming apparatus. That is, other rollers that have a single belt that
winds around them may also be provided according to aspects of the present invention,
such that when the other rollers move farther away from a unit on which the belt forms
a nip with, the distance between the other rollers does not vary significantly.
[0049] As described above, in the fusing device according to aspects of the present invention
and the image forming apparatus employing the same, as the pressure roller and the
separation roller move farther away from the heating roller according to a thickness
variation of the printing medium, the distance between the center of the pressure
roller and the center of the separation roller does not significantly change. Thus,
as a variation of a pressure applied to the fusing pressure belt is insignificant,
the fusing pressure belt is prevented from slipping or being deformed, thereby preventing
an image distortion, an image offset, a printing medium jam, etc. Furthermore, the
image forming apparatus according to aspects of the present invention provides a consistent
fusing performance by employing the aforementioned fusing device, thereby improving
a printing quality.
[0050] Although a few embodiments of the present invention have been shown and described,
it would be appreciated by those skilled in the art that changes may be made in this
embodiment without departing from the principles of the invention, the scope of which
is defined in the claims and their equivalents.
[0051] Attention is directed to all papers and documents which are filed concurrently with
or previous to this specification in connection with this application and which are
open to public inspection with this specification, and the contents of all such papers
and documents are incorporated herein by reference.
[0052] All of the features disclosed in this specification (including any accompanying claims,
abstract and drawings), and/or all of the steps of any method or process so disclosed,
may be combined in any combination, except combinations where at least some of such
features and/or steps are mutually exclusive.
[0053] Each feature disclosed in this specification (including any accompanying claims,
abstract and drawings) may be replaced by alternative features serving the same, equivalent
or similar purpose, unless expressly stated otherwise. Thus, unless expressly stated
otherwise, each feature disclosed is one example only of a generic series of equivalent
or similar features.
[0054] The invention is not restricted to the details of the foregoing embodiment(s). The
invention extends to any novel one, or any novel combination, of the features disclosed
in this specification (including any accompanying claims, abstract and drawings),
or to any novel one, or any novel combination, of the steps of any method or process
so disclosed.
1. A fusing device that is provided on a printing passage of an image forming apparatus
and fuses an image transferred to a print medium (M), the fusing device comprising:
a heating roller (41);
a pressure roller (51) facing the heating roller (41) to press a print medium (M)
fed along the printing passage against the heating roller (41);
a separation roller (61) facing the heating roller (41) to separate the print medium
(M) from the heating roller (41) after the image is fused on to the print medium (M);
a fusing pressure belt (45) that winds around the pressure roller (51) and the separation
roller (61) and forms a fusing nip to contact with the heating roller (41);
a first pressure member (55) to pressure the pressure roller (51) towards the heating
roller (41) along a first line (P3); and
a second pressure member (65) to pressure the separation roller (61) towards the heating
roller (41),
wherein the first line (P3) passes through a center of the pressure roller (51) and
forms an angle θ1 towards the separation roller (61) with a second line (L3) that passes through a
center of the heating roller (41) and the center of the pressure roller (51).
2. The fusing device as claimed in claim 1, wherein the angle θ
1 formed by the first line (P3) and the second line (L3) satisfies an equation 1:
3. The fusing device as claimed in claim 1, wherein:
the second pressure member (65) pressures the separation roller (61) towards the heating
roller (41) along a third line (P4), and
the third line (P4) passes through a center of the separation roller (61) and forms
an angle θ2 towards the pressure roller (51) with a fourth line (L4) that passes through the
center of the heating roller (41) and the center of the separation roller (61).
4. The fusing device as claimed in claim 3, wherein the angle θ
2 formed by the third line (P4) and the fourth line (L4) satisfies an equation 2:
5. The fusing device as claimed in claim 3 or claim 4, wherein the first line (P3) and
the third line (P4) are substantially parallel with each other.
6. A fusing device that is provided on a printing passage of an image forming apparatus
and fuses an image transferred to a print medium (M), the fusing device comprising:
a heating roller (41);
a pressure roller (51) facing the heating roller (41) to press a print medium (M)
fed along the printing passage against the heating roller (41);
a separation roller (61) facing the heating roller (41) to separate the print medium
(M) from the heating roller (41) after the image is fused on to the print medium (M);
a fusing pressure belt (45) that winds around the pressure roller (51) and the separation
roller (61) and forms a fusing nip to contact with the heating roller (41);
a first pressure member (55) to pressure the pressure roller (51) towards the heating
roller (41); and
a second pressure member (65) to pressure the separation roller (61) towards the heating
roller (41) along a first line (P3),
wherein the first line (P3) passes through a center of the separation roller (61)
and forms an angle θ1 towards the pressure roller (51) with a second line (L3) that passes through a center
of the heating roller (41) and the center of the separation roller (61).
7. The fusing device as claimed in claim 6, wherein the angle θ
1 formed by the first line (P3) and the second line (L3) satisfies an equation 1:
8. The fusing device as claimed in any one of claims 1 to claim 7, wherein the fusing
device further comprises:
a first bushing (53) that supports the pressure roller (51) to be rotatable;
a second bushing (63) that supports the separation roller (61) to be rotatable; and
a frame (70) such that the first pressure member (55) is provided between the first
bushing (53) and the frame (70) and the second pressure member (65) is provided between
the second bushing (63) and the frame (70).
9. The fusing device as claimed in claim 8, wherein the first pressure member (55) elastically
pressures the pressure roller (51) towards the heating roller (41).
10. The fusing device as claimed in claim 8, wherein the second pressure member (65) elastically
pressures the separation roller (61) towards the heating roller (41).
11. An image forming apparatus comprising:
a developing unit (130) to develop an image with a toner and form the image;
a light scanning unit (140) to scan a beam to the developing unit (130) to form an
electrostatic latent image on the developing unit (130);
a transfer unit (150) corresponding to the developing unit (130) to transfer the latent
image formed on the developing unit (130) to a print medium (M); and
the fusing device as claimed in any one of claims 1 to 7 that is provided on a printing
passage and fuses the image transferred to the print medium (M).
12. The image forming apparatus as claimed in claim 11, wherein the fusing device further
comprises:
a first bushing (53) that supports the pressure roller (51) to be rotatable;
a second bushing (63) that supports the separation roller (61) to be rotatable; and
a frame (70) such that the first pressure member (55) is provided between the first
bushing (53) and the frame (70) and the second pressure member (65) is provided between
the second bushing (63) and the frame (70).
13. The image forming apparatus as claimed in claim 12, wherein the first pressure member
(55) elastically pressures the pressure roller (51) towards the heating roller (41),
and the second pressure member (65) elastically pressures the separation roller (61)
towards the heating roller (41).
14. A pressing device that is provided in an image forming apparatus, the pressing device
comprising:
a common roller;
a first roller facing the common roller;
a second roller facing the common roller;
a pressure belt that winds around the first roller and the second roller and forms
a nip to contact with the common roller so as to fix an image on a medium passing
between the pressure belt and the common roller;
a first pressure member (55) to pressure the first roller towards the common roller
along a first line (P3); and
a second pressure member (65) to pressure the second roller towards the common roller
along a second line (L3), the first line (P3) being substantially parallel with the
second line (L3).
15. A fusing device that is provided on a printing passage of an image forming apparatus
and fuses an image transferred to a print medium (M), the fusing device comprising:
a heating roller (41);
a pressure roller (51) facing the heating roller (41) to press a print medium (M)
fed along the printing passage against the heating roller (41);
a separation roller (61) facing the heating roller (41) to separate the print medium
(M) from the heating roller (41) after the image is fused on to the print medium (M);
a fusing pressure belt (45) that winds around the pressure roller (51) and the separation
roller (61) and forms a fusing nip to contact with the heating roller (41);
a first pressure member (55) to pressure the pressure roller (51) towards the heating
roller (41) along a first line (P3); and
a second pressure member (65) to pressure the separation roller (61) towards the heating
roller (41) along a second line (L3), the second line (L3) being substantially parallel
with the first line (P3).
16. A method of fusing an image transferred to a print medium (M) in an image forming
apparatus, the method comprising:
forming a fusing nip to contact a heating roller (41) with a fusing pressure belt
(45) that winds around a pressure roller (51) and a separation roller (61);
pressuring the pressure roller (51) along a first line (P3) towards the heating roller
(41) in order to press the print medium (M) against the heating roller (41); and
pressuring the separation roller (61) along a second line (L3) towards the heating
roller (41) in order to separate the print medium (M) from the heating roller (41),
wherein the first line (P3) and the second line (L3) are roughly parallel with each
other.